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High pressure elastic behavior of synthetic Mg3Y 2(SiO4)3 garnet up to 9 GPa
Dawei Fan;  Maining Ma;  Shuyi Wei;   Zhiqiang Chen;  Hongsen Xie
2013
发表期刊Advances in Materials Science and Engineering
页码1-7
摘要

The compression behavior of synthetic magnesium- (Mg-) yttrium (Y) garnet Mg3Y2(SiO4)3 has been investigated upto about 8.79 GPa at 300 K using in situ angle-dispersive X-ray diffraction and a diamond anvil cell at the beamline X17C, National Synchrotron Light Source, Brookhaven National Laboratory. No phase transition has been observed within the pressure range investigated. The unit-cell parameters and volume decreased systematically with increasing pressure, and a reliable isothermal bulk modulus () and its pressure derivative () were obtained in this study. The values of zero-pressure volume , , and  refined with a third-order Birch-Murnaghan equation of state are  Å3,  GPa, and . If  is fixed at 4,  is obtained as  GPa.

收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.gyig.ac.cn/handle/42920512-1/11044
专题地球内部物质高温高压实验室
作者单位1.Laboratory for High Temperature and High Pressure Study of the Earth’s Interior of Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, China
2.Key Laboratory of Computational Geodynamics of Chinese Academy of Sciences, University of Chinese Academy of Sciences, Beijing 100049, China
3.University of Chinese Academy of Sciences, Beijing 100049, China
4.Department of Geosciences, Stony Brook University, Stony Brook, NY 11794, USA
推荐引用方式
GB/T 7714
Dawei Fan;Maining Ma;Shuyi Wei; Zhiqiang Chen;Hongsen Xie. High pressure elastic behavior of synthetic Mg3Y 2(SiO4)3 garnet up to 9 GPa[J]. Advances in Materials Science and Engineering,2013:1-7.
APA Dawei Fan;Maining Ma;Shuyi Wei; Zhiqiang Chen;Hongsen Xie.(2013).High pressure elastic behavior of synthetic Mg3Y 2(SiO4)3 garnet up to 9 GPa.Advances in Materials Science and Engineering,1-7.
MLA Dawei Fan;Maining Ma;Shuyi Wei; Zhiqiang Chen;Hongsen Xie."High pressure elastic behavior of synthetic Mg3Y 2(SiO4)3 garnet up to 9 GPa".Advances in Materials Science and Engineering (2013):1-7.
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